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Oxidation kinetics of large nickel particles

机译:大镍颗粒的氧化动力学

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Oxidation of polycrystalline nickel particles with an approximate median diameter of 158 μm has been studied by thermogravimetric measurements in the temperature range 773-1473 K. The oxidation was found to be thermally activated with an apparent activation energy of about 1.9 eV at temperatures below l073 K and 1.2 eV at higher temperatures. Our data showed the qualitative features expected for oxidation of spherical metal particles. The kinetics was compared with a homogenous field coupled-currents theory for oxidation of spherical metal particles. Calculations using a median particle size or a distribution of particle sizes could only give a satisfactory fit to part of the experimental data. Possible explanations for the deviations in terms of space charge, grain boundary diffusion, grain growth, and sintering are discussed in this paper. Scanning electron microscopy studies of the particles after oxidation showed that a large difference exists in the surface structure and the degree of sintering between the particles oxidized at low and high temperatures.
机译:通过热重法在温度范围为773-1473 K的条件下研究了中值粒径约为158μm的多晶镍颗粒的氧化。发现氧化在低于1073 K的温度下以约1.9 eV的表观活化能热活化。在较高温度下为1.2 eV。我们的数据显示了球形金属颗粒氧化的定性特征。将动力学与均质场耦合电流理论对球形金属颗粒的氧化进行了比较。使用中值粒径或粒径分布进行的计算只能令人满意地拟合部分实验数据。本文讨论了空间电荷,晶界扩散,晶粒长大和烧结方面偏差的可能解释。氧化后的粒子的扫描电子显微镜研究表明,在低温和高温下,氧化后的粒子的表面结构和烧结程度存在很大差异。

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